SCP 991UHD-2M is a professional Ultra Slim Premium HDMI cable, 2m, supporting 4K@60Hz (4:4:4), HDR, ARC, HDCP 2.2, 3D, and Ethernet. Ultra-thin, triple shielded, with slim 24K gold-plated connectors.

991UHD-2M

Premium Certified Ultra Slim 4K Ultra HD HDMI Cable, 2m

Catalogue index: SCP000039

  • Delivery time: 14 days
  • Delivery: from PLN25.00 (InPost)
PLN126.00 net / szt. PLN154.98 gross incl. 23% VAT / szt.

Description

SCP 991UHD-2M - Ultra Slim Premium HDMI Cable, 2m

SCP 991UHD-2M is a professional-grade Ultra Slim Premium HDMI cable, 2 meters in length, designed for AV applications requiring high signal quality and compact design. It supports the full HDMI 2.0b specification, including 4K@60Hz (4:4:4), HDR, HDCP 2.2, 3D, and Audio Return Channel (ARC). With triple shielding and 24K gold-plated connectors, it ensures effective EMI protection and stable signal transmission.

Its ultra-thin, flexible design and slim-type connectors make it ideal for installations in tight spaces - such as behind displays, inside racks, or in Digital Signage systems. ATC certification and an anti-counterfeiting label with a verifiable QR code confirm its quality and compliance with HDMI standards.

Functionality

  • HDMI 2.0b support - up to 18 Gbps
  • 4K@60Hz (4:4:4), HDR, HDCP 2.2 video transmission
  • Audio Return Channel (ARC), Ethernet, 3D, Dolby Atmos®, 32-channel audio
  • Backward compatible with HDMI 1.4, 2.0, 2.0a
  • Slim design - perfect for tight installation spaces
  • Anti-counterfeiting label with QR code

Features

  • Length: 2 m
  • Bandwidth: up to 18 Gbps
  • Supports: 4K@60Hz (4:4:4), HDR, HDCP 2.2, ARC, 3D, Dolby Atmos®, Ethernet
  • Shielding: triple - maximum EMI protection
  • Connectors: HDMI Type A, 24K gold-plated, slim version
  • Construction: ultra-thin and flexible
  • ATC tested - HDMI 2.0b compliant
  • Color: black
  • Snug-Tite™ technology - secure connection

SCP 991UHD-2M is a reliable solution for AV professionals who need a flexible and high-performance HDMI cable for installations in space-constrained environments.

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